A Review of Research Progress on Ti(C,N)-Based Cermet Binder by Intermetallic Compounds and High-Entropy Alloys

Ti(C,N)-based cermet is a kind of composite material composed of a metal binder phase and a Ti(C,N)-hard phase, which is widely used in the fields of cutting machining and wear-resistant parts due to its high hardness, good toughness, wear resistance, and chemical stability. In recent years, the res...

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Main Authors: Liang Wang, Jingfei Bai, Yanghe Wang, Zhengxing Men
Format: Article
Language:English
Published: MDPI AG 2024-01-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/17/3/675
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author Liang Wang
Jingfei Bai
Yanghe Wang
Zhengxing Men
author_facet Liang Wang
Jingfei Bai
Yanghe Wang
Zhengxing Men
author_sort Liang Wang
collection DOAJ
description Ti(C,N)-based cermet is a kind of composite material composed of a metal binder phase and a Ti(C,N)-hard phase, which is widely used in the fields of cutting machining and wear-resistant parts due to its high hardness, good toughness, wear resistance, and chemical stability. In recent years, the research on the replacement of traditional Ni, Co, and Fe binder phases by novel binder phases such as intermetallic compounds and high-entropy alloys has made remarkable progress, which significantly improves the mechanical properties, wear resistance, corrosion resistance, and high-temperature oxidation resistance of Ti(C,N)-based cermets. This paper reviews the latest research results, summarizes the mechanism of the new binder to improve the performance of metal–ceramics, and looks forward to the future research directions.
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spelling doaj.art-d784d02e479a4864afe5d9b5981b0def2024-02-09T15:17:41ZengMDPI AGMaterials1996-19442024-01-0117367510.3390/ma17030675A Review of Research Progress on Ti(C,N)-Based Cermet Binder by Intermetallic Compounds and High-Entropy AlloysLiang Wang0Jingfei Bai1Yanghe Wang2Zhengxing Men3Chengdu Aeronautic Polytechnic, Chengdu 610100, ChinaChengdu Aeronautic Polytechnic, Chengdu 610100, ChinaChengdu Aeronautic Polytechnic, Chengdu 610100, ChinaChengdu Aeronautic Polytechnic, Chengdu 610100, ChinaTi(C,N)-based cermet is a kind of composite material composed of a metal binder phase and a Ti(C,N)-hard phase, which is widely used in the fields of cutting machining and wear-resistant parts due to its high hardness, good toughness, wear resistance, and chemical stability. In recent years, the research on the replacement of traditional Ni, Co, and Fe binder phases by novel binder phases such as intermetallic compounds and high-entropy alloys has made remarkable progress, which significantly improves the mechanical properties, wear resistance, corrosion resistance, and high-temperature oxidation resistance of Ti(C,N)-based cermets. This paper reviews the latest research results, summarizes the mechanism of the new binder to improve the performance of metal–ceramics, and looks forward to the future research directions.https://www.mdpi.com/1996-1944/17/3/675Ti(C,N)ceramicbinderintermetallic compoundshigh-entropy alloys
spellingShingle Liang Wang
Jingfei Bai
Yanghe Wang
Zhengxing Men
A Review of Research Progress on Ti(C,N)-Based Cermet Binder by Intermetallic Compounds and High-Entropy Alloys
Materials
Ti(C,N)
ceramic
binder
intermetallic compounds
high-entropy alloys
title A Review of Research Progress on Ti(C,N)-Based Cermet Binder by Intermetallic Compounds and High-Entropy Alloys
title_full A Review of Research Progress on Ti(C,N)-Based Cermet Binder by Intermetallic Compounds and High-Entropy Alloys
title_fullStr A Review of Research Progress on Ti(C,N)-Based Cermet Binder by Intermetallic Compounds and High-Entropy Alloys
title_full_unstemmed A Review of Research Progress on Ti(C,N)-Based Cermet Binder by Intermetallic Compounds and High-Entropy Alloys
title_short A Review of Research Progress on Ti(C,N)-Based Cermet Binder by Intermetallic Compounds and High-Entropy Alloys
title_sort review of research progress on ti c n based cermet binder by intermetallic compounds and high entropy alloys
topic Ti(C,N)
ceramic
binder
intermetallic compounds
high-entropy alloys
url https://www.mdpi.com/1996-1944/17/3/675
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